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Surface nanostructuring of biocompatible polymer for wettability control in MEMS

机译:生物相容性聚合物的表面纳米结构,用于MEMS中的润湿性控制

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We present a low-potential method to control surface roughness of doped polypyrrole through redox-induced transformation in surface morphology. By varying the electric potential of as-deposited doped polypyrrole in aqueous sodium dodecylbenzene sulfonate (0.1M) from -0.6 to +1.5V (vs. Ag/AgCl), doped polypyrrole transforms from being a hydrophilic film (60° contact angle) to a hydrophobic film (107° contact angle). Atomic force microscope measurements verify that the surface morphologies of doped polypyrrole, when subject to applied potentials from −0.6V to +1.5V, change from smooth (average roughness of 3.1 nm) to rough (average roughness of 31.1 nm), representing a 10-fold increase in surface roughness. Based on these evidence, we postulate that the degree of oxidation strongly influence surface roughness.
机译:我们提出了一种低电势方法,通过氧化还原诱导的表面形态转变来控制掺杂的聚吡咯的表面粗糙度。通过将十二烷基苯磺酸钠水溶液(0.1M)中沉积的掺杂聚吡咯的电位从-0.6改变为+ 1.5V(vs.Ag/AgCl),掺杂的聚吡咯从亲水膜(60°接触角)转变为疏水膜(107°接触角)。原子力显微镜测量证实,掺杂的聚吡咯的表面形态在施加-0.6V至+ 1.5V的电势时,会从光滑(平均粗糙度为3.1 nm)变为粗糙(平均粗糙度为31.1 nm),代表10 -表面粗糙度增加一倍。基于这些证据,我们推测氧化程度强烈影响表面粗糙度。

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